Anti-blocking energy-saving cooking range
By designing structures such as a fire distribution base, fire distribution cylinder, oil drain hole, and guide cylinder on the stove, the problems of steam emission and unstable cookware in the stove are solved, thus achieving the safety and energy efficiency of the stove.
Patent Information
- Application Number
- CN202423088790.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-14
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-14
AI Technical Summary
Existing stoves pose a risk of steam venting towards people during use, and cookware is not stable enough and is prone to clogging, affecting safety and efficiency.
An energy-saving stove designed to prevent clogging is constructed by installing a flame distribution base and flame distribution tube at the bottom of the burner head, and setting flame outlet, flame inlet, oil drain hole and oil collection tray. The flame cover is used to block oil stains, and the oil stains are discharged through the oil drain hole to ensure unobstructed gas and fire paths. The inner wall is protected by a mesh, and the gap between the flame distribution sleeve and the flame inlet is designed. A guide tube prevents oil stains from entering the flame inlet.
It effectively prevents the risk of steam being emitted to personnel, improves the stability and safety of cookware, avoids oil stains clogging, and ensures the normal use and energy-saving effect of the stove.
Smart Images

Figure CN223499625U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of stove technology, and in particular to an energy-saving stove that is clogging-resistant. Background Technology
[0002] A stove is a cooking appliance. Currently, stoves on the market have the following disadvantages: 1. The way the pot is connected to the stove is that the pot is placed directly on the stove, and steam is released through the gap between the pot and the stove. In this way, the steam will be released towards people, which poses a risk of burns; 2. When the pot is placed on the stove, it is only connected to the bottom of the pot through the circular surface of the stove, which is not stable enough and there is a risk of the pot sliding.
[0003] Among them, the utility model application with application number CN202321739823.7 discloses a cooking utensil for daily use, which aims to provide a stove. The key technical points of the solution are: a stove base, a stove inner shell, and a stove cover. The stove inner shell is set inside the stove base. The stove cover is fixedly connected to the stove base by screws. The upper edge of the stove inner shell is snapped into the outer edge of the stove cover. The stove base, stove inner shell, and stove cover are connected to form a ventilation channel. The stove cover is provided with a protrusion with an exhaust hole. The stove cover is also provided with a fixing block. The protrusion and the fixing block are used to stabilize the pot. The stove base and the stove inner shell are connected by a snap-fit joint. The surface of the stove inner shell is provided with several ventilation ports. The bottom of the stove base and the middle of the stove inner shell are provided with air inlets. The locking blocks are respectively set in the locking plates and between adjacent locking plates. The stove base, stove inner shell, and stove cover are all integrally molded.
[0004] Existing stoves do not have waterproof and oil-proof functions. When oil and water drip into the stove, they can easily clog the vents, reducing the stove's combustion efficiency and affecting normal use. Utility Model Content
[0005] The purpose of this invention is to provide an energy-saving stove that is resistant to clogging, addressing the shortcomings of existing technologies.
[0006] To achieve the above objectives, the technical solution of this utility model is as follows:
[0007] An energy-saving stove with anti-clogging features a burner head for supporting a pot. The burner head has an mounting opening at its bottom, and a flame distribution seat is installed at the mounting opening. A flame distribution tube is detachably installed on the flame distribution seat. A flame outlet is located at the top center of the flame distribution tube, and a flame pressure cap is installed at the flame outlet. A flame distribution chamber is formed inside the flame distribution tube, communicating with the flame outlet. Multiple flame outlets communicating with the flame distribution chamber are formed at the top of the flame distribution tube, and a flame inlet communicating with the flame distribution chamber is formed at the bottom of the flame distribution tube. An oil collection tray is installed at the bottom of the flame distribution seat, and an oil drain hole is also formed at the bottom of the flame distribution tube to drain oil and water from the flame distribution chamber.
[0008] Furthermore: the burner head has a frustum structure, and the diameter of the opening at the top of the burner head gradually decreases from top to bottom.
[0009] Furthermore: a mesh screen is installed on the inner wall of the burner head.
[0010] Furthermore: the ignition port is equipped with an ignition head, and a hollow ignition tube is installed on the top of the ignition head. The ignition cap is detachably installed on the top of the ignition tube, and the ignition tube is formed with multiple outer flame holes.
[0011] Furthermore: the bottom of the flame cap is formed with a tinder tube that can be inserted into the flame tube, and the side wall of the tinder tube is formed with an inner flame hole that is coaxially aligned with the outer flame hole.
[0012] Furthermore: a flame distribution sleeve is provided inside the flame distribution chamber, which is coaxially aligned with the flame inlet hole. The inner diameter of the flame distribution sleeve is larger than the outer diameter of the flame inlet hole, and there is a gap between the flame distribution sleeve and the flame inlet hole.
[0013] Furthermore: a guide tube is installed in the fire inlet, the guide tube is installed at the top of the fire inlet, a part of the top of the guide tube is located inside the fire distribution sleeve, and there is a radial gap between the fire distribution sleeve and the guide tube.
[0014] Furthermore: an annular plate is detachably mounted on the mounting port, and the annular plate is connected to the top of the ignition base.
[0015] Furthermore: the side wall of the fire distribution tube is formed with a radially protruding first positioning mounting block, and the inner side wall of the fire distribution seat is formed with a second positioning mounting block that cooperates with the stop of the first positioning mounting block.
[0016] Furthermore: A support frame is installed at the bottom of the ignition base, and an oil pan support block for supporting the oil receiving pan is formed laterally at the bottom of the support frame.
[0017] The beneficial effects of this utility model are as follows: gas can be discharged through the flame outlet and flame port inside the flame distribution seat; when oil drips from the burner head, the flame cover can block the flame port, and the oil stains will not block the flame outlet after flowing into the flame distribution chamber. The oil stains can be discharged through the oil drain hole to the oil receiving tray at the bottom of the flame distribution seat for storage, and will not block the flame inlet and flame outlet, ensuring smooth gas and flame paths and preventing blockage; when the oil receiving tray is full, the oil receiving tray can be removed and replaced. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of an energy-saving stove.
[0019] Figure 2 This is a cross-sectional structural diagram of an energy-saving stove.
[0020] Figure 3 This is a cross-sectional view of the fire distribution seat.
[0021] The reference numerals in the figures include:
[0022] 1-Stove head,
[0023] 11-Installation port, 12-Spacing mesh, 13-Fire distribution seat, 14-Support frame, 15-Oil pan support block,
[0024] 16-Oil receiving tray, 17-Annular plate,
[0025] 2-Fire distribution tube,
[0026] 21-Firebox; 22-Tinder head; 23-Fire outlet; 24-Flame cover; 25-Tinder tube; 26-Inner flame hole; 27-Outer flame hole; 28-Fire outlet tube.
[0027] 3-Fire inlet,
[0028] 31-Oil drain hole, 32-Ignition outlet hole, 33-Guide tube, 34-Ignition bushing, 35-First positioning mounting block
[0029] 36 - Second positioning mounting block. Detailed Implementation
[0030] The present invention will now be described in detail with reference to the accompanying drawings.
[0031] like Figure 1-3 As shown, an energy-saving stove with anti-clogging features a burner head 1 for supporting the pot body. The burner head 1 has a frustum-shaped structure, and the opening diameter at the top of the burner head 1 gradually decreases from top to bottom, which facilitates the support of the pot body.
[0032] The burner head 1 has an installation port 11 at the bottom, and a flame distribution seat 13 is installed at the installation port 11. A flame distribution tube 2 is detachably installed on the flame distribution seat 13. A flame outlet 23 is provided at the top center of the flame distribution tube 2. A flame pressure cover 24 is installed on the flame outlet 23. A flame distribution chamber 21 is formed inside the flame distribution tube 2. The flame distribution chamber 21 is connected to the flame outlet 32. Multiple flame outlets 32 connected to the flame distribution chamber 21 are formed at the top of the flame distribution tube 2. A flame inlet 3 connected to the flame distribution chamber 21 is formed at the bottom of the flame distribution tube 2. An oil receiving tray 16 is installed at the bottom of the flame distribution seat 13. An oil drain hole 31 is also formed at the bottom of the flame distribution tube 2 to drain the oil and water in the flame distribution chamber 21.
[0033] Gas can be discharged through the flame outlet 32 and flame outlet 23 in the flame distribution base 13; when oil drips from the burner head 1, the flame suppressor 24 can block the flame outlet 23, and after the oil flows into the flame distribution chamber 21, it will not block the flame outlet 32. The oil can be discharged through the oil drain hole 31 to the oil receiving tray 16 at the bottom of the flame distribution base 13 to store the oil and prevent it from blocking the flame inlet 3 and the flame outlet 32, ensuring smooth gas and flame paths and preventing blockage; when the oil receiving tray 16 is full, the oil receiving tray 16 can be removed and replaced.
[0034] A mesh 12 is installed on the inner wall of the burner head 1, which can protect the inner wall of the burner head 1.
[0035] The burner outlet 23 is equipped with a tinder head 22, and a hollow fire tube 28 is installed on the top of the tinder head 22. The fire suppressor 24 is detachably installed on the top of the fire tube 28. The fire tube 28 is formed with multiple outer fire holes 27. The fire suppressor 24 can prevent the fire at the burner outlet 23 from being too large, and can spray the fire more evenly from the side through the outer fire holes 27, so that the fire at the burner head 1 is more even.
[0036] Preferably, the bottom of the flame suppressor 24 is formed with a tinder tube 25 that can be inserted into the flame outlet tube 28. The side wall of the tinder tube 25 is radially formed with an inner flame hole 26 that is coaxially aligned with the outer flame hole 27. The flame suppressor 24 is detachably installed into the flame outlet tube 28 through the tinder tube 25. After being inserted into place, the inner flame hole 26 of the tinder tube 25 is coaxially aligned with the outer flame hole 27 of the flame outlet tube 28, and the fire can be ejected from the side, ensuring the installation of the flame suppressor 24.
[0037] A flame distribution sleeve 34 is provided inside the flame distribution chamber 21. The flame distribution sleeve 34 is coaxially aligned with the flame inlet hole 3. The inner diameter of the flame distribution sleeve 34 is larger than the outer diameter of the flame inlet hole 3. There is a gap between the flame distribution sleeve 34 and the flame inlet hole 3. The flame path enters the flame distribution chamber 21 through the flame inlet hole 3. The flame distribution sleeve 34 can make the flame path flow radially through the gap. After passing through the gap, the flame path is discharged from the flame outlet hole 32 at the top of the flame distribution chamber 21.
[0038] Furthermore, a guide tube 33 is installed in the fire inlet 3. The guide tube 33 is installed at the top of the fire inlet 3, and a portion of the top end of the guide tube 33 is located inside the fire distribution sleeve 34. There is a radial gap between the fire distribution sleeve 34 and the guide tube 33. After the oil drips onto the fire distribution tube 2, it enters the fire distribution chamber 21 through the fire outlet 32. Since a portion of the top end of the guide tube 33 is located inside the fire distribution sleeve 34, the oil will not overflow into the fire inlet 3, thus preventing blockage of the fire inlet 3.
[0039] The mounting port 11 is detachably fitted with an annular plate 17, which is connected to the top of the fire distribution base 13.
[0040] The side wall of the ignition tube 2 has a radially protruding first positioning mounting block 35, and the inner side wall of the ignition base 13 has a second positioning mounting block 36 that cooperates with the first positioning mounting block 35. After the ignition tube 2 is placed into the ignition base 13, the second positioning mounting block 36 supports the first positioning mounting block 35 of the ignition tube 2, which can realize the installation of the ignition tube 2. After the ignition tube 2 is disassembled, the oil receiving tray 16 at the bottom of the ignition base 13 can be removed and replaced, and the oil stains on the oil receiving tray 16 can be cleaned.
[0041] A support frame 14 is installed at the bottom of the ignition base 13. The bottom of the support frame 14 has a horizontally formed oil pan support block 15 for supporting the oil receiving pan 16. The oil receiving pan 16 is supported by the support frame 14 and the oil pan support block 15, which improves the support stability and facilitates disassembly.
[0042] In summary, this utility model possesses the aforementioned excellent characteristics, enabling it to achieve unprecedented efficiency in use and thus become a highly practical product.
[0043] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of this utility model. The content of this specification should not be construed as a limitation of this utility model.
Claims
1. An energy-saving stove with anti-clogging function, comprising a burner head for supporting a pot body, wherein the bottom of the burner head has a mounting opening, and a burner holder is mounted on the mounting opening, characterized in that: The ignition base is detachably equipped with an ignition tube. The ignition tube has a flame outlet at its top center and a flame suppressor cap. An ignition chamber is formed inside the ignition tube and communicates with the flame outlet. Multiple flame outlets communicating with the ignition chamber are formed at the top of the ignition tube, and a flame inlet communicating with the ignition chamber is formed at the bottom of the ignition tube. An oil receiving tray is installed at the bottom of the ignition base, and an oil drain hole is also formed at the bottom of the ignition tube to drain the oil and water in the ignition chamber.
2. The anti-clogging energy-saving stove according to claim 1, characterized in that: The burner head has a frustum structure, and the opening diameter at the top of the burner head gradually decreases from top to bottom.
3. The anti-clogging energy-saving stove according to claim 2, characterized in that: A mesh screen is installed on the inner wall of the furnace head.
4. The anti-clogging energy-saving stove according to claim 1, characterized in that: The ignition port is equipped with a tinder head, and a hollow ignition tube is installed on the top of the tinder head. The ignition cover is detachably installed on the top of the ignition tube, and the ignition tube is formed with multiple outer flame holes.
5. The anti-clogging energy-saving stove according to claim 4, characterized in that: The bottom of the flame cover is formed with a tinder tube that can be inserted into the flame tube, and the side wall of the tinder tube is formed with an inner flame hole that is coaxially aligned with the outer flame hole.
6. The anti-clogging energy-saving stove according to claim 1, characterized in that: The ignition chamber is provided with an ignition sleeve, which is coaxially aligned with the ignition inlet. The inner diameter of the ignition sleeve is larger than the outer diameter of the ignition inlet, and there is a gap between the ignition sleeve and the ignition inlet.
7. The anti-clogging energy-saving stove according to claim 6, characterized in that: The fire inlet is equipped with a guide tube, which is installed at the top of the fire inlet. A portion of the top of the guide tube is located inside the fire distribution sleeve, and there is a radial gap between the fire distribution sleeve and the guide tube.
8. The anti-clogging energy-saving stove according to claim 1, characterized in that: The mounting port is detachably fitted with an annular plate, which is connected to the top of the fire distribution seat.
9. The anti-clogging energy-saving stove according to claim 8, characterized in that: The side wall of the fire distribution tube is formed with a radially protruding first positioning mounting block, and the inner side wall of the fire distribution seat is formed with a second positioning mounting block that cooperates with the stop of the first positioning mounting block.
10. An anti-clogging energy-saving stove according to claim 9, characterized in that: The bottom of the fire distribution seat is equipped with a support frame, and the bottom of the support frame is horizontally formed with an oil pan support block for supporting the oil receiving pan.
Citation Information
Patent Citations
Cooking range
CN220436577U